Resistive switching in a RRAM device
A resistive random access memory (RRAM) device is provided, and includes a top electrode layer, a bottom electrode layer, and an insulating layer positioned between the top electrode layer and the bottom electrode layer. The insulating layer includes a SiN x layer.
1 . A resistive random access memory (RRAM) device, comprising:
a top electrode layer;
a bottom electrode layer; and
an insulating layer positioned between the top electrode layer and the bottom electrode layer, the insulating layer including a SiN x layer;
wherein the insulating layer comprises a SiO 2 layer positioned below the SiN x layer.
2 . The RRAM device of claim 1 , wherein the RRAM device has a resistive switching current in a nA range.
3 . The RRAM device of claim 1 , wherein the top electrode layer includes a Pt layer positioned over a Ti layer.
4 . The RRAM device of claim 3 , wherein the Pt layer is about 100 nm thick.
5 . The RRAM device of claim 3 , wherein the Ti layer is about 10 nm thick.
6 . The RRAM device of claim 1 , wherein the bottom electrode layer includes a TiN layer positioned over a Ti layer.
7 . The RRAM device of claim 6 , wherein the TiN layer is about 100 nm thick.
8 . The RRAM device of claim 6 , wherein the Ti layer is about 10 nm thick.
9 . The RRAM device of claim 1 , comprising an F silica substrate, wherein the bottom electrode layer is positioned on the F silica substrate.
10 . The RRAM device of claim 1 , wherein the SiN x layer is about 5 nm thick.
11 . The RRAM device of claim 1 , wherein the SiO 2 layer is about 10 nm thick.
12 . The RRAM device of claim 1 , wherein the SiN x layer is positioned between the top electrode layer and the bottom electrode layer.
13 . The RRAM device of claim 1 , wherein the insulating layer is a resistive layer having a bilayer structure.
14 . A switching device, comprising:
a top electrode layer;
a bottom electrode layer; and
a resistive switching bilayer positioned between the top electrode layer and the bottom electrode layer;
wherein the resistive switching bilayer includes SiN x /SiO 2 .
15 . The switching device of claim 14 , wherein the switching device has a resistive switching current in the nA range.
16 . The switching device of claim 14 , wherein the resistive switching bilayer includes a SiN x layer positioned over a SiO 2 layer.
17 . The switching device of claim 14 , wherein:
the top electrode layer includes a Pt layer positioned over a Ti layer; and
the bottom electrode layer includes a TiN layer positioned over a Ti layer.
18 . A method of operating a resistive random access memory (RRAM) device, comprising:
applying an external voltage to the RRAM device, the RRAM device including (i) a top electrode layer, (ii) a bottom electrode layer, and (iii) an insulating layer positioned between the top electrode layer and the bottom electrode layer, the insulating layer including a SiN x layer and the insulating layer comprises a SiO 2 layer positioned below the SiN x layer;
wherein application of the external voltage to the RRAM device changes the resistance across the insulating layer.